会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Fireplace Fountain Apparatus
    • 壁炉喷泉设备
    • US20090178667A1
    • 2009-07-16
    • US11971946
    • 2008-01-10
    • Brandon David Kline
    • Brandon David Kline
    • F24B1/18F24B1/191
    • F24B1/198
    • A fireplace fountain apparatus for a fireplace structure with an aperture for a firebox comprises a distribution pipe superior to the aperture, a reservoir at the base of the fireplace structure, and a pump communicating water from the reservoir through the lateral pipe to the distribution pipe and onto the surface of the fireplace structure. Water flowing down the structure is diverted lateral of the aperture by a diversion trough disposed superior to the aperture and into the reservoir. The diversion trough may be removed and an insert may be fitted to the aperture when the use of the firebox is not contemplated.
    • 一种用于具有用于火箱的孔的壁炉结构的壁炉喷泉装置,包括位于壁面上方的分配管,在壁炉结构的底部设有储存器,以及将来自贮存器的水通过侧管连通到分配管的泵, 到壁炉结构的表面。 沿着结构向下流动的水通过设置在孔的上方并进入储存器的分流槽而被转向孔的侧面。 当不设想使用火箱时,分流槽可以被移除并且插入件可以安装到孔口。
    • 2. 发明申请
    • Method and apparatus for detection of a frequency coded sequence in the presense of sinusoidal interference
    • 用于检测正弦波干扰的频率编码序列的方法和装置
    • US20060262831A1
    • 2006-11-23
    • US11132338
    • 2005-05-19
    • David KlinePaul Gilmour
    • David KlinePaul Gilmour
    • H04B1/00
    • H04B1/715H04B2001/7152H04L5/0016
    • A communication device according to the present invention detects a frequency-hopped signal in an environment including sinusoidal interference. The frequency-hopped signal includes a frequency shift keying (FSK) sequence, where the sequence alternates between frequencies shifted from the carrier signal or hop frequency by positive and negative frequency offsets. The communication device of the present invention uses independent detection paths for each of the shifted frequencies. In the detection path for the upper frequency (e.g., positive frequency shift), a series of filters suppresses signals in the lower frequency band (e.g., negative frequency shift), while the detection path for the lower frequency employs a separate series of filters to suppress signals in the upper frequency band. The filter outputs from each detection path are separately examined to detect the presence of an expected signal.
    • 根据本发明的通信设备在包括正弦干扰的环境中检测跳频信号。 频率跳跃信号包括频移键控(FSK)序列,其中序列在从载波信号或跳频之间偏移正和负频率偏移的频率之间交替。 本发明的通信装置对于每个移位的频率使用独立的检测路径。 在较高频率的检测路径(例如,正频移)中,一系列滤波器抑制较低频带中的信号(例如,负频移),而较低频率的检测路径采用单独的一系列滤波器 抑制较高频段的信号。 分别检查来自每个检测路径的滤波器输出以检测预期信号的存在。
    • 3. 发明申请
    • ERROR PROCESSING SYSTEM
    • 错误处理系统
    • US20070016911A1
    • 2007-01-18
    • US11423732
    • 2006-06-13
    • Keith CyktorDavid KlineDonald AyresSean KellyJames McInnis
    • Keith CyktorDavid KlineDonald AyresSean KellyJames McInnis
    • G06F9/46
    • G06Q20/389G06F19/328G06Q20/02H04Q2213/13103H04Q2213/13106H04Q2213/13162H04Q2213/13175H04Q2213/13349
    • An error processing system in a system for communicating messages from a plurality of source executable applications to a plurality of destination executable applications includes a repository for centrally storing data identifying errors encountered by the plurality of different destination executable applications in processing data in messages from one or more of the source executable applications. Such an identified error may be encountered by an individual destination executable application during partially successfully processing of data in a first message received from a source executable application. A user interface initiates generation of data representing a single display image including data identifying, at least one error encountered by a particular destination executable application during partially successfully processing data in a first message, the first message, and the particular destination executable application.
    • 用于将来自多个源可执行应用程序的消息传送到多个目标可执行应用程序的系统中的错误处理系统包括用于集中存储识别由多个不同目的地可执行应用程序遇到的错误的数据的存储库,用于处理来自一个或多个 更多的源可执行应用程序。 在从源可执行应用程序接收到的第一消息中的数据部分成功处理期间,单个目标可执行应用程序可能会遇到这种识别的错误。 用户界面发起表示单个显示图像的数据的生成,包括识别在部分成功处理第一消息中的数据,第一消息和特定目的地可执行应用程序期间由特定目的地可执行应用程序遇到的至少一个错误的数据。
    • 5. 发明授权
    • Self compensating spread-spectrum hybrid
    • 自补偿扩频混合
    • US5546421A
    • 1996-08-13
    • US293979
    • 1994-08-22
    • Philip C. BasileJames E. Thompson, Jr.David KlineGary E. Toner
    • Philip C. BasileJames E. Thompson, Jr.David KlineGary E. Toner
    • H04B1/58H04B15/00
    • H04B1/586
    • A communications station (10) couples a bidirectional input-output signal path (16') to two unidirectional signal paths; a transmit signal path (12') and a receive signal path (14'), using a controllable hybrid (20). A feedback control system in the station minimizes the amount of transmit signal appearing at the receive output port (24) of the hybrid (20). The control system spreads the spectrum of a pilot signal (40) by means of a biphase modulator (46) and a pseudorandom generator (42) to produce a spread-spectrum pilot, which is added, in a summer 30, to the transmit signal. The spread-spectrum pilot signal covers the bandwidth of the information signal, and is reflected in an amount and with a phase which depends upon the relative impedance presented to the hybrid (20) by the bidirectional signal path (16'). The receive signal, which arrives at the station bidirectional port (16) from the bidirectional path, is coupled from the hybrid (20) to a spread-spectrum demodulator (56), which regenerates the own-station pilot signal with a phase which depends upon the impedance presented by the bidirectional signal path to the hybrid. The pilot signal is phase-detected (64), processed, and applied to the hybrid to degeneratively minimize the amount of transmit signal coupled to the receive port (14).
    • 通信站(10)将双向输入 - 输出信号路径(16')耦合到两个单向信号路径; 发射信号路径(12')和接收信号路径(14'),使用可控混合(20)。 站中的反馈控制系统使出现在混合动力(20)的接收输出端口(24)处的发射信号的量最小化。 控制系统通过双相调制器(46)和伪随机发生器(42)扩展导频信号(40)的频谱,以产生扩频导频,其在加法器30中被添加到发射信号 。 扩展频谱导频信号覆盖信息信号的带宽,并且反映在取决于通过双向信号路径(16')呈现给混合(20)的相对阻抗的量和相位。 从双向路径到达站双向端口(16)的接收信号从混合(20)耦合到扩频解调器(56),扩频解调器(56)以相关的相位再生本站导频信号 通过双向信号路径提供给混合信号的阻抗。 导频信号被相位检测(64),被处理并应用到混合器以使耦合到接收端口(14)的发射信号的量退化最小化。